Common Applications for Micro Machining Micromachining is often used to produce semiconductor devices, optical components, and medical devices. Semiconductor devices require micromachining for various features such as wafer dicing and packaging. Optical components need micromachining for applications such as lens polishing and fiber …
Optical and fiber non-destructive measurements to control hole diameter, shape and position Scanning Electron Microscope (SEM) Micro Machining Hole diameter from 70 μm in production up to 2 mm (0.003 to 0.08 inch) Tapered hole with reverse taper up to 150 μm/mm Wall thickness / hole diameter ratio up to 12 All shapes (square, rectangle, …
MMMI is one of the best in the business of micromachining parts. Their attention to detail is amazing. The company has experienced leaders and a team that delivers and has always exceeded my expectations. Medical Micro Machining specializes in small parts machining, including turning, drilling, threading, and milling processes. We machine a ...
• Laser micromachining technologies have revolutionized manufacturing in microelectronics, semiconductor, photovoltaics, LED, medical device fabrication and many other industries. • With the ability to create micro features with high precision and repeatability in virtually any material, lasers have found wide use in micro processing …
31/07/2018· Mechanical micromachining or commonly known as micromachining is a manufacturing technology that involves the use of mechanical micro tools with geometrically defined cutting edges in the subtractive fabrication of devices or features with at least some of their dimensions in the micrometer range (1–999 μm).
With a variety of laser sources from deep UV excimer to Nd:YAG lasers, we can micromachine most materials (eg. polymers, metals, ceramic, glass). Our Engineers will choose the most appropriate laser system to micromachine your parts, based on feature sizes, tolerances, volume, and material. 193nm 248nm 266nm 355nm 532nm 1064nm …
Bulk micromachining is a method of making extremely tiny mechanical or electrical components. This process typically uses wafers of silicon, plastic, or glass substrates. Bulk micromachining starts with a solid piece and removes material until it reaches its final shape, as opposed to surface micromachining, which builds a piece layer by layer.
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